Published March 2002 | Version v1
Journal article

Applied satellite remote sensing to runoff analysis: Through the effective depth of soil layer

  • 1. Nihon Univ., Tokyo (Japan)

Description

The thickness of the soil layers in which tree roots are able to develop freely influences forest composition and growth. Trees growing in shallow soil are usually less well supplied with water and mineral nutrients than those growing in deeper soil. A soil may be deep in an absolute sense but, because of a relatively impervious layer, such as hardpan or because of a high water-table, may be shallow in a physiological sense. Penetrability measurements have been found useful in evaluating the influence of different forest types on the physical properties of soils. Commonly the penetrability of soils can be measured by using the Hasegawa-formed soil penetrometer and can be judged as the soil softness content (SSC). Previous studies report soil with more than 1.9 cm/drop of SSC to be highly permeable and therefore roots are more likely to be extensively developed. Based upon this theory the depth of soil layer with more than 1.9 cm/drop of SSC can be defined as the Effective Depth of Soil Layer (EDSL). We examined the relationship between the Ratio Vegetation Index (RVI) and the EDSL and established a 'Runoff Simulation Model (RSM)' based upon the theory of the Storage Function Model method. The conclusions are that (1) a strong positive correlation between the RVI (ground measured) and the EDSL was given, (2) applying results of conclusion (1) to satellite analysis a similar correlation between the RVI (satellite analysis of JERS 1/OPS data) and the EDSL was observed and (3) the simulated storm-runoff hydro graph coincides with the observed one well

Additional details

Publishing Information

Journal Title
Journal of the Remote Sensing Society of Japan
Journal Volume
22
Journal Issue
1
Journal Page Range
p. 12-20
ISSN
0289-7911

INIS

Country of Publication
Japan
Country of Input or Organization
International Atomic Energy Agency (IAEA)
INIS RN
46114406
Subject category
S54: ENVIRONMENTAL SCIENCES;
Descriptors DEI
FORESTS; MINERALS; PLANT GROWTH; ROOTS; RUNOFF; SIMULATION; SOIL CHEMISTRY; SOIL MECHANICS; SOILS; TREES; WATER TABLES
Descriptors DEC
CHEMISTRY; ENVIRONMENTAL TRANSPORT; GROWTH; MASS TRANSFER; MECHANICS; PLANTS

Optional Information

Notes
FAO/AGRIS record; ARN: JP2002005290